Aug 2026· International Immunopharmacology· Vol 188, pp.
117322
· 0 citations· 43 references
Medicine
Abstract
Chronic neuroinflammation is implicated in the pathogenesis of Parkinson's disease (PD), contributing to progressive dopaminergic neuron loss. Cobrotoxin (CoTX), a short-chain α-neurotoxin isolated from Naja atra venom, exerts anti-inflammatory and analgesic effects in several inflammation-related disease models. However, whether CoTX modulates glia-mediated neuroinflammation or confers neuroprotection in PD remains unknown. In this study, we conducted a randomized, placebo-controlled clinical trial and preclinical animal studies to explore the therapeutic efficacy and mechanisms of CoTX in PD. A 12-day subcutaneous regimen of Cobratide (an injectable form of CoTX), consisting of 70 μg daily for 5 days, a 2-day interval, and another 5-day course, significantly improved motor symptoms in PD patients, as reflected by the UPDRS Part II + III scores, with a well-tolerated safety profile. These beneficial effects were further validated in both MPTP- and lipopolysaccharide-induced PD mouse models. Specifically, intranasal administration of CoTX ameliorated motor coordination defects, attenuated dopaminergic neuronal loss, and suppressed glia-mediated neuroinflammation in the substantia nigra of MPTP-challenged mice. Mechanistically, CoTX did not directly protect neurons; instead, it conferred indirect neuroprotection by inhibiting neuroinflammation via blockade of the NF-κB/STAT1 signaling cascades. Furthermore, CoTX functionally interacted with TLR4, which may act as a putative molecular target of CoTX. Collectively, these findings demonstrate the anti-neuroinflammatory and neuroprotective effects of CoTX in PD, highlighting its potential as a promising therapeutic candidate.
The natural flavonoid Astragalin concurrently addresses three core pathological processes in PD, namely dopaminergic neuron degeneration, α-synucleinopathy, and neuroinflammation, through coordinated modulation of interconnected molecular pathways.
Jun Wang, Jie-Yu He, Qin Huang et al.· Free Radical Biology & Medic...· 0 citations
6-OH-F ameliorates Aβ-induced cognitive impairment by attenuating oxidative stress, neuroinflammation, and pyroptotic signaling, potentially through modulation of the TLR4/NF-κB/NLRP3 pathway, highlighting its therapeutic potential in Alzheimer's disease.
Current Parkinson’s disease (PD) therapies like Levodopa (L-DOPA) only provide symptomatic relief, highlighting the need for multi-target neuroprotective agents. This study investigates the mechanisms and preclinical effects of trans-vitisin B (tVB), an oligomeric stilbene, in PD models. In LPS-stimulated HMC3 and RAW...
Evgeniy A. Pislyagin, I. Manzhulo, Irina Agafonova et al.· Antioxidants· 0 citations
Baricitinib, a selective JAK1/JAK2 inhibitor with established anti-inflammatory properties, has demonstrated therapeutic efficacy in several autoimmune and inflammatory diseases. This study aimed to investigate the neuroprotective potential of baricitinib in a ketamine-induced rat model of schizophrenia. Specifically,...
Ali A Albariqi, Dalia A. Nawwar, Weam W. Ibrahim et al.· International Immunopharmaco...· 0 citations
Microglial-mediated neuroinflammation is a core driver of brain disorders. Thus, modulating microglial activity is a critical therapeutic goal. In this study, we explored how Ginsenoside Rg1 (Rg1) protects against the inflammation seen in Parkinson's disease (PD). Our experiments utilized MPTP-challenged mice and lipop...
Wen-Shan Li, Xin-Lang Yu, Zhiying Zhang et al.· Journal of Agricultural and...· 0 citations
BACKGROUND
Parkinson's disease (PD) is characterized by dopaminergic neuron loss, α-synuclein accumulation, and sustained neuroinflammation. Autophagy can remove pathogenic α-synuclein and restrain NLR family pyrin domain containing 3 (NLRP3) inflammasome activation. Gomisin N (GN), a lignan from Schisandra chinensis,...
Cheng-Fu Su, Zhi-Qiang Deng, Ka-Yee Ying et al.· Phytomedicine· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.